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用于油酸催化裂化制生物燃料的分级HZSM-5

Hierarchical HZSM-5 for Catalytic Cracking of Oleic Acid to Biofuels.

作者信息

Arumugam Mahashanon, Goh Chee Keong, Zainal Zulkarnain, Triwahyono Sugeng, Lee Adam F, Wilson Karen, Taufiq-Yap Yun Hin

机构信息

Catalysis Science and Technology Research Centre (PutraCat), Faculty of Science, Universiti Putra Malaysia, UPM, Serdang 43400, Selangor, Malaysia.

School of Applied Science, Republic Polytechnic, 9 Woodlands Ave 9, Singapore 738964, Singapore.

出版信息

Nanomaterials (Basel). 2021 Mar 16;11(3):747. doi: 10.3390/nano11030747.

Abstract

Solid acid catalyzed cracking of waste oil-derived fatty acids is an attractive route to hydrocarbon fuels. HZSM-5 is an effective acid catalyst for fatty acid cracking; however, its microporous nature is susceptible to rapid deactivation by coking. We report the synthesis and application of hierarchical HZSM-5 (h-HZSM-5) in which silanization of pre-crystallized zeolite seeds is employed to introduce mesoporosity during the aggregation of growing crystallites. The resulting h-HZSM-5 comprises a disordered array of fused 10-20 nm crystallites and mesopores with a mean diameter of 13 nm, which maintain the high surface area and acidity of a conventional HZSM-5. Mesopores increase the yield of diesel range hydrocarbons obtained from oleic acid deoxygenation from ~20% to 65%, attributed to improved acid site accessibility within the hierarchical network.

摘要

固体酸催化废油衍生脂肪酸的裂解是一种制取烃类燃料的诱人途径。HZSM-5是一种用于脂肪酸裂解的有效酸催化剂;然而,其微孔性质易因结焦而迅速失活。我们报道了分级HZSM-5(h-HZSM-5)的合成与应用,其中采用预结晶沸石种子的硅烷化在生长微晶聚集过程中引入介孔。所得的h-HZSM-5由无序排列的10-20纳米融合微晶和平均直径为13纳米的介孔组成,其保持了传统HZSM-5的高表面积和酸度。介孔使油酸脱氧制得的柴油馏分烃产率从约20%提高到65%,这归因于分级网络内酸位点可及性的改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd8c/8002341/ab729812debc/nanomaterials-11-00747-sch001.jpg

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